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most citedCovariant Galileon

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cond-mat.mes-hall200936 cited

Spin-torque driven ferromagnetic resonance in a nonlinear regime

W. Chen, G. de Loubens, J-M. L. Beaujour +2

Spin-valve based nanojunctions incorporating Co|Ni multilayers with perpendicular anisotropy were used to study spin-torque driven ferromagnetic resonance (ST-FMR) in a nonlinear r…

cond-mat.mes-hall200838 cited

A Micromagnetic Study of Magnetization Reversal in Ferromagnetic Nanorings

Gabriel D. Chaves-O'Flynn, Andrew D. Kent, Daniel L. Stein

We present results of micromagnetic simulations of thin ferromagnetic rings undergoing magnetization reversal. This geometry is one of few examples in micromagnetics in which the t…

cond-mat.mes-hall200812 cited

Magnetization relaxation in the single molecule magnet Ni under continuous microwave irradiation

G. de Loubens, D. A. Garanin, C. C. Beedle +2

Spin relaxation between the two lowest-lying spin-states has been studied in the S=4 single molecule magnet Ni under steady state conditions of low amplitude and continuous mic…

cond-mat.mes-hall200716 cited

Finite size effects on spin-torque driven ferromagnetic resonance in spin-valves with a Co/Ni synthetic free layer

W. Chen, G. de Loubens, J-M. L. Beaujour +2

Spin-torque driven ferromagnetic resonance (ST-FMR) is used to study magnetic excitations in Co/Ni synthetic layers confined in nanojunctions. Field swept ST-FMR measurements were…

cond-mat.mes-hall200745 cited

Spin-torque driven ferromagnetic resonance of Co/Ni synthetic layers in spin valves

W. Chen, J-M. L. Beaujour, G. de Loubens +2

Spin-torque driven ferromagnetic resonance (ST-FMR) is used to study thin Co/Ni synthetic layers with perpendicular anisotropy confined in spin-valve based nanojunctions. Field swe…